Self-commissioning of interior permanent- magnet synchronous motor drives with high-frequency current injection

In this paper, a simple and robust method for parameter estimation at rotor standstill is presented for interior permanent magnet (IPM) synchronous machines. The estimated parameters are the stator resistance through dc test, the dq inductances using high-frequency injection, and the permanent magne...

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Main Authors: Odhano, S, Giangrande, Paolo, Bojoi, R.I., Gerada, C.
Format: Article
Published: IEEE 2014
Subjects:
Online Access:https://eprints.nottingham.ac.uk/36114/
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author Odhano, S
Giangrande, Paolo
Bojoi, R.I.
Gerada, C.
author_facet Odhano, S
Giangrande, Paolo
Bojoi, R.I.
Gerada, C.
author_sort Odhano, S
building Nottingham Research Data Repository
collection Online Access
description In this paper, a simple and robust method for parameter estimation at rotor standstill is presented for interior permanent magnet (IPM) synchronous machines. The estimated parameters are the stator resistance through dc test, the dq inductances using high-frequency injection, and the permanent magnet flux by means of a closed-loop speed control maintaining rotor stationary. The proposed method does not require either locking the rotor or additional/special power supplies. The validity of the suggested method has been verified by implementation on two IPM motor prototypes. Finally, the estimated parameters have been compared against results obtained through finite-element simulations and with machine magnetic characterization, separately performed, to validate the method's effectiveness. Saturation and cross-saturation effects are taken care of through amplitude modulation and cross-axis current application, respectively.
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spelling nottingham-361142020-05-04T16:45:31Z https://eprints.nottingham.ac.uk/36114/ Self-commissioning of interior permanent- magnet synchronous motor drives with high-frequency current injection Odhano, S Giangrande, Paolo Bojoi, R.I. Gerada, C. In this paper, a simple and robust method for parameter estimation at rotor standstill is presented for interior permanent magnet (IPM) synchronous machines. The estimated parameters are the stator resistance through dc test, the dq inductances using high-frequency injection, and the permanent magnet flux by means of a closed-loop speed control maintaining rotor stationary. The proposed method does not require either locking the rotor or additional/special power supplies. The validity of the suggested method has been verified by implementation on two IPM motor prototypes. Finally, the estimated parameters have been compared against results obtained through finite-element simulations and with machine magnetic characterization, separately performed, to validate the method's effectiveness. Saturation and cross-saturation effects are taken care of through amplitude modulation and cross-axis current application, respectively. IEEE 2014-03-04 Article PeerReviewed Odhano, S, Giangrande, Paolo, Bojoi, R.I. and Gerada, C. (2014) Self-commissioning of interior permanent- magnet synchronous motor drives with high-frequency current injection. IEEE Transactions on Industry Applications, 50 (5). pp. 3295-3303. ISSN 1939-9367 Torque Rotors Resistance Estimation Voltage control Stators Synchronous motors synchronous motor drives angular velocity control machine control parameter estimation permanent magnet motors stators saturation effects interior permanent- magnet synchronous motor drives self-commissioning high-frequency current injection parameter estimation rotor standstill IPM synchronous machines stator resistance dc test dq inductances high-frequency injection permanent magnet flux closed-loop speed control stationary rotor power supplies finite-element simulations machine magnetic characterization cross-saturation effects amplitude modulation cross-axis current application http://ieeexplore.ieee.org/document/6755536/?arnumber=6755536 doi:10.1109/TIA.2014.2309722 doi:10.1109/TIA.2014.2309722
spellingShingle Torque
Rotors
Resistance
Estimation
Voltage control
Stators
Synchronous motors synchronous motor drives
angular velocity control
machine control
parameter estimation
permanent magnet motors
stators saturation effects
interior permanent- magnet synchronous motor drives
self-commissioning
high-frequency current injection
parameter estimation
rotor standstill
IPM synchronous machines
stator resistance
dc test
dq inductances
high-frequency injection
permanent magnet flux
closed-loop speed control
stationary rotor
power supplies
finite-element simulations
machine magnetic characterization
cross-saturation effects
amplitude modulation
cross-axis current application
Odhano, S
Giangrande, Paolo
Bojoi, R.I.
Gerada, C.
Self-commissioning of interior permanent- magnet synchronous motor drives with high-frequency current injection
title Self-commissioning of interior permanent- magnet synchronous motor drives with high-frequency current injection
title_full Self-commissioning of interior permanent- magnet synchronous motor drives with high-frequency current injection
title_fullStr Self-commissioning of interior permanent- magnet synchronous motor drives with high-frequency current injection
title_full_unstemmed Self-commissioning of interior permanent- magnet synchronous motor drives with high-frequency current injection
title_short Self-commissioning of interior permanent- magnet synchronous motor drives with high-frequency current injection
title_sort self-commissioning of interior permanent- magnet synchronous motor drives with high-frequency current injection
topic Torque
Rotors
Resistance
Estimation
Voltage control
Stators
Synchronous motors synchronous motor drives
angular velocity control
machine control
parameter estimation
permanent magnet motors
stators saturation effects
interior permanent- magnet synchronous motor drives
self-commissioning
high-frequency current injection
parameter estimation
rotor standstill
IPM synchronous machines
stator resistance
dc test
dq inductances
high-frequency injection
permanent magnet flux
closed-loop speed control
stationary rotor
power supplies
finite-element simulations
machine magnetic characterization
cross-saturation effects
amplitude modulation
cross-axis current application
url https://eprints.nottingham.ac.uk/36114/
https://eprints.nottingham.ac.uk/36114/
https://eprints.nottingham.ac.uk/36114/